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1.
Blan.  JL 《空载雷达》2000,(1):1-5,57
建立了一个MPRF(中等脉冲重复频率)空-空雷达试验台,并进行了涉及到低飞机载目标遭遇条件的飞行试验。该雷达工作在Ku波段,采用线性调频波形和模拟解线性调频展宽距离压缩。利用数字化任意波形产生器产生波形,且在接收 采用了直接IF(中频)数字变换。利用低成本的商用大动态范围A/D变换器实现高压缩比,得到了一架Lear喷气式飞机、一架直升机和几个地面动目标以及几种杂波的下视飞行试验数据。这种试验计划验  相似文献   
2.
Robe.  JL 《空载雷达》1996,(4):17-26
F-15E是麦道公司比较成功的F-15系列战斗机的最新改型机,这种双重任务战斗机既具有极好的空-空能力,又具有夜间纵深封锁空-地能力。本文阐述了F-15E飞行试验计划迄今为止部的结果以工飞计划思路,包括用户和合同商的作用及责任。  相似文献   
3.
Garb.  JL  刘乃谦 《宇航计测技术》1993,12(2):43-47
在宇航工业中,许多关键构件都借助连接件插入钻好的孔内进行装配。这些钻孔和连接操作都是由自动机械以越来越高的重复率完成。为了确保连接件的完整性并保持自动化的优势,需要改善高速自动化加工孔尺寸的方法和表面状态的测量。本文探讨的就是钻孔的检测问题,并研制出一种基于散射场原理的电容传感器在线孔径检测系统。孔的横截面形状可通过某个轴线位置沿不同径向多次测量直径来描述。  相似文献   
4.
The Active Rack Isolation System [ARIS] International Space Station [ISS] Characterization Experiment, or ARIS-ICE for short, is a long duration microgravity characterization experiment aboard the ISS. The objective of the experiment is to fully characterize active microgravity performance of the first ARIS rack deployed on the ISS. Efficient ground and on-orbit command and data handling [C&DH] segments are the crux in achieving the challenging objectives of the mission. The objective of the paper is to provide an overview of the C&DH architectures developed for ARIS-ICE, with the view that these architectures may serve as a model for future ISS microgravity payloads. Both ground and on-orbit segments, and their interaction with corresponding ISS C&DH systems are presented. The heart of the on-orbit segment is the ARIS-ICE Payload On-orbit Processor, ARIS-ICE POP for short. The POP manages communication with the ISS C&DH system and other ISS subsystems and payloads, enables automation of test/data collection sequences, and provides a wide range of utilities such as efficient file downlinks/uplinks, data post-processing, data compression and data storage. The hardware and software architecture of the POP is presented and it is shown that the built-in functionality helps to dramatically streamline the efficiency of on-orbit operations. The ground segment has at its heart special ARIS-ICE Ground Support Equipment [GSE] software developed for the experiment. The software enables efficient command and file uplinks, and reconstruction and display of science telemetry packets. The GSE software architecture is discussed along with its interactions with ISS ground C&DH elements. A test sequence example is used to demonstrate the interplay between the ground and on-orbit segments.  相似文献   
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One of the Skylab experiments dealt with motion sickness, comparing susceptibility in the workshop aloft with susceptibility preflight and postflight. Tests were conducted on and after mission-day 8 (MD 8) by which time the astronauts were adapted to working conditions. Stressful accelerations were generated by requiring the astronauts, with eyes covered, to execute standardized head movements (front, back, left, and right) while in a chair that could be rotated at angular velocities up to 30 rpm. The selected endpoint was either 150 discrete head movements or a very mild level of motion sickness. In all rotation experiments aloft, the five astronauts tested (astronaut 1 did not participate) were virtually symptom free, thus demonstrating lower susceptibility aloft than in preflight and postflight tests on the ground when symptoms were always elicited. Inasmuch as the eyes were covered and the canalicular stimuli were the same aloft as on the ground, it would appear that lifting the stimulus to the otolith organs due to gravity was an important factor in reducing susceptibility to motion sickness even though the transient stimuli generated under the test conditions were substantial and abnormal in pattern. Some of the astronauts experienced motion sickness under operational conditions aloft or after splashdown, but attention is centered chiefly on symptoms manifested in zero gravity. None of the Skylab-II crew (astronauts 1 to 3) was motion sick aloft. Astronaut 6 of the Skylab-III crew (astronauts 4 to 6) experienced motion sickness within an hour after transition into orbit; this constitutes the earliest such diagnosis on record under orbital flight conditions. The eliciting stimuli were associated with head and body movements, and astronaut 6 obtained relief by avoiding such movements and by one dose of the drug combination 1-scopolamine 0.35 mg + d-amphetamine 5.0 mg. All three astronauts of Skylab-III experienced motion sickness in the workshop where astronaut 6 was most susceptible and astronaut 4, least susceptible. The higher susceptibility of SL-III crewmen in the workshop, as compared with SL-II crewmen, may be attributable to the fact that they were based in the command module less than one-third as long as SL-II crewmen. The unnatural movements, often resembling acrobatics, permitted in the open spaces of the workshop revealed the great potentialities in weightlessness for generating complex interactions of abnormal or unusual vestibular and visual stimuli. Symptoms were controlled by body restraint and by drugs, but high susceptibility to motion sickness persisted for 3 days and probably much longer; restoration was complete on MD 7. From the foregoing statements it is clear that on and after MD 8 the susceptibility of SL-II and SL-III crewmen to motion sickness under experimental conditions was indistinguishable. The role played by the acquisition of adaptation effects prior to MD 8 is less clear and is a subject to be discussed.  相似文献   
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9.
Glavin DP  Bada JL 《Astrobiology》2001,1(3):259-269
The delivery of amino acids by micrometeorites to the early Earth during the period of heavy bombardment could have been a significant source of the Earth's prebiotic amino acid inventory provided that these organic compounds survived atmospheric entry heating. To investigate the sublimation of amino acids from a micrometeorite analog at elevated temperature, grains from the CM-type carbonaceous chondrite Murchison were heated to 550 degrees C inside a glass sublimation apparatus (SA) under reduced pressure. The sublimed residue that had collected on the cold finger of the SA after heating was analyzed for amino acids by HPLC. We found that when the temperature of the meteorite reached approximately 150 degrees C, a large fraction of the amino acid glycine had vaporized from the meteorite, recondensed onto the end of the SA cold finger, and survived as the rest of the grains heated to 550 degrees C. alpha-Aminoisobutryic acid and isovaline, which are two of the most abundant non-protein amino acids in Murchison, did not sublime from the meteorite and were completely destroyed during the heating experiment. Our experimental results suggest that sublimation of glycine present in micrometeorite grains may provide a way for this amino acid to survive atmospheric entry heating at temperatures > 550 degrees C; all other amino acids apparently are destroyed.  相似文献   
10.
压膜阻尼对硅微陀螺的精度具有重要影响。平板结构是硅微陀螺中一种典型结构,本文通过对雷诺方程的推导,得出平板在正弦规律小振幅刚性运动时的阻尼力解析式,并给出低频时阻尼系数的近似算法。利用Matlab和CoventorWare软件对运动平板的阻尼进行仿真计算,得出运动平板的阻尼系数和刚度系数,并分析平板参数对阻尼系数及刚度系数的影响。建立不同类型的带孔平板模型,通过比较可以看出,当阻尼孔按一定方式排列时,可以降低结构的阻尼。  相似文献   
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